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Biology subjects

Ruas, M.

Publications and source records attributed to Ruas, M..

2 recordsLinked to original sources

Painting the diversity of a world's favourite fruit: A next generation catalogue of cultivated bananas

Societal impact statementBananas are nutritious fruits of major importance in the tropics and subtropics. Characterizing their diversity is essential to ensure their conservation and use. A catalogue showcasing cultivated bananas genomic diversity was compiled and is to be used as a tool to support the classification of banana cultivars. This research revealed that cultivated banana groups are not all made of identical clones. Materials from recent collecting missions indicated that more banana diversity is expected to be found as the exploration of the banana gene pool continues. These discoveries will drive dynamic conservation strategies for banana genetic resources and will increase their use. SummaryO_LIBanana is an important food crop cultivated in many tropical and subtropical regions around the world. Due to their low fertility, banana landraces are clonally propagated. However, different factors, such as synonymy and the effects of environment, make their assignment to described sets of clones, or cultivar groups, difficult. Consequently, passport data of accessions in genebanks is often uncomplete and sometimes inaccurate. C_LIO_LIWith the recent advances in genomics, a new powerful tool was developed enabling the fine-scale characterization of bananas ancestry along chromosomes, i.e. in silico chromosome painting. We applied this method to a high-throughput genotyping data set obtained from 317 banana accessions spanning most of the known cultivar groups. This set included both genebank and new uncharacterized materials. C_LIO_LIBy comparing curated morphological assignation to the genomic patterns resulting from in silico chromosome painting, we were able to compile a catalogue referencing the chromosome painting patterns of most of the described cultivar groups. C_LIO_LIExamining the genomic patterns obtained, we discovered intra-cultivar group variability. In some cultivar groups, mitotic recombination or deletions were clonally accumulated in cultivars. In addition, we identified at least 4 cultivar groups in which cultivars likely resulting from distinct sexual events co-existed, notably Pisang Awak in which 5 distinct genomic patterns of two ploidy levels were identified. New patterns were also discovered in the newest materials of the set, showing that a wider diversity of clones still exist on farm. C_LI

genomics↗

Two-pore channel 2 is a key regulator of adipocyte differentiation via the cAMP signaling pathway with calpain as downstream effector

We investigated whether the endolysosomal two-pore channel TPC2 is a mediator of adipocyte differentiation. We show that Tpcn2 mRNA is expressed transiently during induction of C3H10T1/2 mesenchymal stem cells to differentiate into adipocytes, and that this expression is triggered by cAMP. This is the first demonstration of a cell signaling pathway that can regulate TPC gene expression. We also identified an important functional role for TPC2 in adipocyte differentiation. First, ectopic TPC2 expression in C3H10T1/2 cells partially rescued the block to adipocyte differentiation caused by cAMP absence. Second, inhibition of endogenous TPC2 expression in primary preadipocytes substantially reduced their ability to differentiate into adipocytes. Finally, genetic variation at the Tpcn2 locus is associated with increased upper-body fat distribution in women concomitant with reduced Tpcn2 expression in abdominal adipose tissue. Our findings implicate TPC2 as an important mediator of adipogenesis and may aid identification of new drug targets for treatment of obesity.

cell biology↗